This study tested whether machine learning (ML) methods can effectively separate individual plants from complex 3D canopy laser scans as a prerequisite to analyzing particular plant features. For this, we scanned mung bean and chickpea crops with PlantEye (R) laser scanners. Firstly, we segmented the crop canopies from the background in 3D space using the Region Growing Segmentation algorithm. Then, Convolutional Neural Network (CNN) based ML algorithms were fine-tuned for plant counting. Application of the CNN-based (Convolutional Neural Network) processing architecture was possible only after we reduced the dimensionality of the data to 2D. This allowed for the identification of individual plants and their counting with an accuracy of 93....
Agriculture is very important to human continued existence and remains a key driver of many economie...
Estimating density maps and counting the number of objects of interest from images has a wide range ...
High-throughput plant phenotyping platforms produce immense volumes of image data. Here, a binary se...
This study tested whether machine learning (ML) methods can effectively separate individual plants f...
The leaf is the organ that is crucial for photosynthesis and the production of nutrients in plants; ...
Knowing before harvesting how many plants have emerged and how they are growing is key in optimizing...
Plant phenotyping focuses on the measurement of plant characteristics throughout the growing season,...
High-throughput phenotyping systems provide abundant data for statistical analysis through plant ima...
Assessing plant population of cotton is important to make replanting decisions in low plant density ...
In this paper, we propose a novel deep learning method based on a Convolutional Neural Network (CNN)...
Plant identification and classification are critical to understand, protect, and conserve biodiversi...
Crop counting is a challenging task for today’s agriculture. Increasing demand for food supplies cr...
Abstract Deep learning presents many opportunities for image-based plant phenotyping. Here we consid...
Pest infestations have an impact on the nation's agricultural output when they harm plants and crops...
Computer vision algorithms for counting plants are an indispensable alternative in managing coffee g...
Agriculture is very important to human continued existence and remains a key driver of many economie...
Estimating density maps and counting the number of objects of interest from images has a wide range ...
High-throughput plant phenotyping platforms produce immense volumes of image data. Here, a binary se...
This study tested whether machine learning (ML) methods can effectively separate individual plants f...
The leaf is the organ that is crucial for photosynthesis and the production of nutrients in plants; ...
Knowing before harvesting how many plants have emerged and how they are growing is key in optimizing...
Plant phenotyping focuses on the measurement of plant characteristics throughout the growing season,...
High-throughput phenotyping systems provide abundant data for statistical analysis through plant ima...
Assessing plant population of cotton is important to make replanting decisions in low plant density ...
In this paper, we propose a novel deep learning method based on a Convolutional Neural Network (CNN)...
Plant identification and classification are critical to understand, protect, and conserve biodiversi...
Crop counting is a challenging task for today’s agriculture. Increasing demand for food supplies cr...
Abstract Deep learning presents many opportunities for image-based plant phenotyping. Here we consid...
Pest infestations have an impact on the nation's agricultural output when they harm plants and crops...
Computer vision algorithms for counting plants are an indispensable alternative in managing coffee g...
Agriculture is very important to human continued existence and remains a key driver of many economie...
Estimating density maps and counting the number of objects of interest from images has a wide range ...
High-throughput plant phenotyping platforms produce immense volumes of image data. Here, a binary se...